forked from OSchip/llvm-project
Rename ConstantFP's getInf to getInfinity.
llvm-svn: 82823
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5a6b11cb71
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@ -258,7 +258,7 @@ public:
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static Constant* get(const Type* Ty, const StringRef& Str);
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static ConstantFP* get(LLVMContext &Context, const APFloat& V);
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static ConstantFP* getNegativeZero(const Type* Ty);
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static ConstantFP* getInf(const Type* Ty, bool negative = false);
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static ConstantFP* getInfinity(const Type* Ty, bool negative = false);
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/// isValueValidForType - return true if Ty is big enough to represent V.
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static bool isValueValidForType(const Type *Ty, const APFloat& V);
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@ -1034,8 +1034,8 @@ struct PowOpt : public LibCallOptimization {
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// and negative infinite correctly.
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// TODO: In fast-math mode, this could be just sqrt(x).
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// TODO: In finite-only mode, this could be just fabs(sqrt(x)).
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Value *Inf = ConstantFP::getInf(CI->getType());
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Value *NegInf = ConstantFP::getInf(CI->getType(), true);
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Value *Inf = ConstantFP::getInfinity(CI->getType());
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Value *NegInf = ConstantFP::getInfinity(CI->getType(), true);
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Value *Sqrt = EmitUnaryFloatFnCall(Op1, "sqrt", B, CI->getAttributes());
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Value *FAbs = EmitUnaryFloatFnCall(Sqrt, "fabs", B, CI->getAttributes());
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Value *FCmp = B.CreateFCmpOEQ(Op1, NegInf, "tmp");
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@ -436,7 +436,7 @@ ConstantFP* ConstantFP::get(LLVMContext &Context, const APFloat& V) {
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return Slot;
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}
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ConstantFP *ConstantFP::getInf(const Type *Ty, bool Negative) {
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ConstantFP *ConstantFP::getInfinity(const Type *Ty, bool Negative) {
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const fltSemantics &Semantics = *TypeToFloatSemantics(Ty);
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return ConstantFP::get(Ty->getContext(),
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APFloat::getInf(Semantics, Negative));
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